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肾脏中的铵根离子(NH4+)转运

NH4+ transport in the kidney.

作者信息

Knepper M A

机构信息

Laboratory of Kidney and Electrolyte Metabolism, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, Maryland.

出版信息

Kidney Int Suppl. 1991 Jul;33:S95-102.

PMID:1890804
Abstract

We have described the overall process that is responsible for the efficient transfer of ammonium from its production site in the proximal tubule cells to the final urine. The mechanism depends on direct NH4+ transport at a number of sites. There appears to be a predominance of NH3 over NH4+ transport in net total ammonia transport only in the collecting ducts and possibly the descending limbs of Henle's loop. Several examples of physiologically important direct NH4+ transport in the kidney were described. First, coupled Na/NH4/2Cl transport across the apical membrane of the thick ascending limb of Henle's loop mediates secondary active transport of ammonium, which drives countercurrent multiplication of ammonium in the renal medulla. Second, part of the NH4+ uptake across the apical membrane of the thick ascending limb may occur as a result of penetration by NH4+ through apical K+ channels. It is unknown whether NH4+ penetrates K+ channels in other tubule segments. Third, NH4+ can be actively transported into cells by substitution of NH4+ for K+ on the Na-K-ATPase. This NH4+ transport process is likely to be rapid enough to be physiologically significant only in the inner medulla, where NH4+ concentrations are high enough to successfully compete with K+. Fourth, NH4+ penetrates the paracellular pathway in some nephron segments such as the proximal tubule and thick ascending limb. Simple passive diffusion of NH4+ via the paracellular pathway is thought to be physiologically important in the thick ascending limb where it contributes to net NH4+ absorption.

摘要

我们已经描述了负责将铵从近端小管细胞的产生部位有效转运至终尿的整个过程。该机制取决于多个部位的直接NH4+转运。仅在集合管以及可能在亨氏袢降支中,净总氨转运中NH3的转运似乎比NH4+占优势。文中描述了肾脏中一些具有生理重要性的直接NH4+转运的例子。首先,亨氏袢厚升支顶端膜上的Na/NH4/2Cl协同转运介导了铵的继发性主动转运,这推动了肾髓质中铵的逆流倍增。其次,厚升支顶端膜对NH4+的部分摄取可能是由于NH4+通过顶端K+通道渗透所致。NH4+是否会渗透到其他肾小管节段的K+通道尚不清楚。第三,NH4+可以通过在Na-K-ATP酶上用NH4+替代K+而被主动转运到细胞内。这种NH4+转运过程可能仅在内髓质中快速到具有生理意义,因为在内髓质中NH4+浓度足够高,能够成功与K+竞争。第四,NH4+在一些肾单位节段(如近端小管和厚升支)中穿过细胞旁途径。在厚升支中,NH4+通过细胞旁途径的简单被动扩散被认为在生理上很重要,它有助于NH4+的净吸收。

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